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221.
在以往试验研究的基础上,建立了框架异型节点等效核心区在剪、压复合作用下的计算模型,应用简化拉压杆模型方法对等效核心区进行了受力分析.研究表明:基于简化拉压杆模型方法计算得到异型节点的抗剪承载力与现行规范建议方法计算结果相当,但简化拉压杆模型方法有明确的力学计算模型,基于该模型计算得到的抗剪承载力与试验结果吻合较好.在此... 相似文献
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随着服役时间的增长,侵蚀环境下钢筋混凝土框架节点因钢筋发生不同程度的锈蚀而造成承载性能下降,严重影响建筑结构的安全使用。本文在已有钢筋混凝土框架节点抗剪强度理论模型的基础上,考虑钢筋锈蚀对框架节点受力性能的影响,建立锈蚀钢筋混凝土框架中节点受剪承载力计算公式。通过11组锈蚀钢筋混凝土节点试验数据,对建议理论模型进行验证。研究结果表明,锈蚀钢筋混凝土节点受剪承载力试验值与理论计算值之比的平均值为0.951,方差为0.075,二者吻合较好,本文建议的计算方法可用于锈蚀钢筋混凝土框架中节点承载力分析。 相似文献
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1996年9月我们在河南信阳——汤阴布设了由6个测点组成的测线,对Pi2地磁脉动进行了同时观测,并对该南北测线上Pi2地磁脉动出现的同时性进行了探讨.分析结果指出,Pi2地磁脉动首先出现在测线最南端的信阳测点,越往北同一变化出现的时间越晚.该区域地表的南北向似传播速度约为140km/s.基于Pi2地磁脉动随时间变化的不稳定性,以及基子波的可延伸性与局部化特性,我们选择合适的基子波形式,利用子波变换分析了Pi2脉动所含主要的周期变化成分的周期和振幅随时间的变化,指出其周期和振幅都随时间有复杂的变化形式. 相似文献
226.
介绍了中国地壳运动观测网络1998~1999年基准站GPS观测概况,简要介绍了用伯尔尼(Bernese)软件对GPS观测数据的处理结果,详细介绍了所获取的1998年9月初~1999年7月初基准网地壳运动,包括各基准站位移与网内各部分的应变.在所述观测期间,我国东部地区较为稳定.相对东部地区,西南部地区以向北运动为主,位移量约17mm,受北北东向挤压为主;西北部地区以北西向运动为主,位移量约11mm;而云南地区以向南运动为主,位移量约14mm.我国中部南北地震带则是一强烈的剪切变形带.网内最大主应变量为2.910-8.观测结果表明,印度板块向北挤压依然是影响我国地壳运动的主要因素. 相似文献
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The definition of active block is given from the angles of crustal deformation and strain. The movement and strain parameters of active blocks are estimated according to the unified velocity field composed of the velocities at 1598 GPS stations obtained from GPS measurements carried out in the past years in the Chinese mainland and the surrounding areas. The movement and strain conditions of the blocks are analyzed. The active blocks in the Chinese mainland have a consistent E-trending movement component, but its N and S components are not consistent. The blocks in the western part have a consistent N-trending movement and the blocks in the eastern part have a consistent S-trending movement. In the area to the east of 90°E, that is the area from Himalayas block towards NE, the movement direction of the blocks rotates clockwisely and the movement rates of the blocks are different. Generally, the movement rate is large in the west and south and small in the east and north with a difference of 3 to 4 times between the rates in the west and east. The distributions of principal compressive strain directions of the blocks are also different. The principal strain of the blocks located to the west of 90oE is basically in the SN direction, the principal compressive strain of the blocks in the northeastern part of Qingzang plateau is roughly in the NE direction and the direction of principal compressive strain of the blocks in the southeastern part of Qingzang plateau rounds clockwisely the east end of Himalayas structure. In addition, the principal strain and shear strain rates of the blocks are also different. The Himalayas and Tianshan blocks have the largest principal compressive strain and the maximum shear strain rate. Then, Lhasa, Qiangtang, Southwest Yunnan (SW Yunnan), Qilian and Sichuan-Yunan (Chuan-Dian) blocks followed. The strain rate of the blocks in the eastern part is smaller. The estimation based on the stain condition indicates that Himalayas block is still the area with the most intensive tectonic activity and it shortens in the NS direction at the rate of 15.2±1.5 mm/a. Tianshan block ranks the second and it shortens in the NS direction at the rate of 10.1±0.9 mm/a. At present, the two blocks are still uprising. It can be seen from superficial strain that the Chinese mainland is predominated by superficial expansion. Almost the total area in the eastern part of the Chinese mainland is expanded, while in the western part, the superficial compression and expansion are alternatively distributed from the south to the north. In the Chinese mainland, most EW-trending or proximate EW-trending faults have the left-lateral or left-lateral strike-slip relative movements along both sides, and most NS-trending faults have the right-lateral or right-lateral strike-slip relative movements along both sides. According to the data from GPS measurements the left-lateral strike-slip rate is 4.8±1.3 mm/a in the central part of Altun fault and 9.8±2.2 mm/a on Xianshuihe fault. The movement of the fault along the block boundary has provided the condition for block movement, so the movements of the block and its boundary are consistent, but the movement levels of the blocks are different. The statistic results indicate that the relative movement between most blocks is quite significant, which proves that active blocks exist. Himalayas, Tianshan, Qiangtang and SW Yunnan blocks have the most intensive movement; China-Mongolia, China-Korea (China-Korea), Alxa and South China blocks are rather stable. The mutual action of India, Pacific and Philippine Sea plates versus Eurasia plate is the principal driving force to the block movement in the Chinese mainland. Under the NNE-trending intensive press from India plate, the crustal matter of Qingzang plateau moves to the NNE and NE directions, then is hindered by the blocks located in the northern, northeastern and eastern parts. The crustal matter moves towards the Indian Ocean by the southeastern part of the plateau. 相似文献
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IntroductionWith the most feasible and powerful technical support provided by the high-precision GPS measurement for the study on horizontal crustal deformation, the obtainment of various-scale horizontal movement data and its study over the whole world is now in the ascendant, and its applicable fields is now expanding successively. In China, besides the GPS monitoring networks for different applications arranged by many agencies and departments, the key scientific project Crustal Movement… 相似文献